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A modified embedded discrete-fracture model to study oil-water two-phase heat and mass transfer in the complex fracture network

机译:一种改进的嵌入离散 - 裂缝模型,用于研究复杂骨折网络中的油水两相热量和传质

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摘要

The temperature of the fluids injected is usually cooler than the in-situ reservoir temperature in the fractured reservoir's development. It is essential to study thermal changes between matrix and fracture. This paper establishes a fully implicit solution model for the coupling of the oil-water two-phase temperature field and seepage field based on the embedded discrete fracture model (EDFM) method. We deduced the mass and heat transfer between the local matrix grid and the fracture grid by the boundary element method (BEM) instead of a simple linear hypothesis to improve the traditional EDFM method. The model can accurately calculate the seepage field and temperature field in the two-dimensional or three-dimensional problem. Compared with the analytical solution, the discrete fracture model (DFM) and the traditional EDFM method proved that the modified EDFM method could significantly improve the calculation accuracy(especially the temperature field). Furthermore, the modified EDFM method is applied to four examples: waterflooding, huff and puff development, heterogeneous and natural fractured reservoirs, and multilayer enhanced geothermal system (EGS), which verifies the applicability, robustness, and computational convenience, of the new method and illustrates the influence and necessity of considering the coupling effect of temperature field and seepage field on the development effect. It provides an efficient and accurate new method for the study of non-isothermal seepage in fractured reservoirs.
机译:注入的流体的温度通常比原位储层在裂缝储层的发育中的原位储层温度冷却。必须研究基质和骨折之间的热变化。本文建立了基于嵌入离散断裂模型(EDFM)方法的油水两相温度场和渗流场耦合完全隐含的解决方案模型。我们通过边界元方法(BEM)代替简单的线性假设来推导出局部矩阵栅格和骨折网格之间的质量和热传递,以改善传统的EDFM方法。该模型可以准确计算二维或三维问题中的渗流场和温度场。与分析解决方案相比,离散断​​裂模型(DFM)和传统EDFM方法证明了改进的EDFM方法可以显着提高计算精度(尤其是温度场)。此外,改进的EDFM方法应用于四个例子:水型,沟槽和泡芙开发,异质和自然裂缝储层,以及多层增强的地热系统(EGS),其验证了新方法的适用性,鲁棒性和计算的便利性说明了考虑温度场和渗流场对开发效果的影响和必要性的影响和必要性。它为裂缝储层中的非等温渗流提供了一种有效和准确的新方法。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2021年第8期|121215.1-121215.19|共19页
  • 作者单位

    College of Petroleum Engineering China University of Petroleum Beijing Beijing China 102249;

    College of Petroleum Engineering China University of Petroleum Beijing Beijing China 102249;

    College of Petroleum Engineering Yangtze University Wuhan China 430100;

    College of Petroleum Engineering China University of Petroleum Beijing Beijing China 102249;

    PipeChina Oil and Gas Control Center Beijing China 100020;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    EDFM; Heat transfer; Coupled processes; Complex fracture network;

    机译:EDFM;传播热量;耦合过程;复杂的骨折网络;

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